首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Site-directed mutagenesis provides insights into the selective binding of trityl derivatives to Plasmodium falciparum dUTPase.
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Site-directed mutagenesis provides insights into the selective binding of trityl derivatives to Plasmodium falciparum dUTPase.

机译:定点诱变为三苯甲基衍生物与恶性疟原虫dUTPase的选择性结合提供了见识。

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摘要

We have previously identified a series of triphenylmethane derivatives of deoxyuridine with antimalarial activity in vitro which selectively inhibit Plasmodium falciparum deoxyuridine triphosphate nucleotidohydrolase (PfdUTPase) compared to the human enzyme. The crystal structure of PfdUTPase in complex with one of these inhibitors suggested that the triphenylmethane derivative was selective due to a series of interactions between the trityl group and the side chains of residues Phe(46), Ile(117) and Lys(96) located in a hydrophobic pocket distinct from the phosphate binding site. Here we show by site-directed mutagenesis that the hydrophobic nature of the trityl binding site and in particular aromatic interactions established between the inhibitor and residue Phe(46) contribute significantly to the binding of uracil-based derivatives containing trityl groups in the 5'-position. Thus, changing Phe(46) for alanine resulted in increased K(i) values for all compounds tested. Conversely, substitution of the polar residue Lys(96) for Ala results in smaller K(i) values and an increase in selectivity with regard to human dUTPase. This information will aid in the design of inhibitors with improved activity against the Plasmodium enzyme.
机译:我们先前已经确定了一系列具有体外抗疟疾活性的脱氧尿苷的三苯基甲烷衍生物,与人类酶相比,该衍生物选择性抑制恶性疟原虫脱氧尿苷三磷酸核苷酸水解酶(PfdUTPase)。 PfdUTPase与这些抑制剂之一的晶体结构表明,由于三苯甲基与残基Phe(46),Ile(117)和Lys(96)的侧链之间发生一系列相互作用,因此三苯基甲烷衍生物具有选择性在不同于磷酸盐结合位点的疏水口袋中。在这里,我们通过定点诱变显示三苯甲基结合位点的疏水性质,尤其是在抑制剂和残基Phe(46)之间建立的芳族相互作用,显着促进了在5'-位置。因此,更改丙氨酸的Phe(46)会导致所有测试化合物的K(i)值增加。相反,用极性残基Lys(96)取代Ala会导致较小的K(i)值,并且对人dUTPase的选择性增加。该信息将有助于设计对疟原虫酶具有改进活性的抑制剂。

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